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21 世纪的抗感染疫苗接种——个人和公共卫生的新视野。

Anti-infective vaccination in the 21st century-new horizons for personal and public health.

机构信息

Vaccines Research and Development, Pfizer Inc., 401 North Middletown Road, Pearl River, NY 10695, United States.

Vaccines Research and Development, Pfizer Inc., 401 North Middletown Road, Pearl River, NY 10695, United States.

出版信息

Curr Opin Microbiol. 2015 Oct;27:96-102. doi: 10.1016/j.mib.2015.07.006. Epub 2015 Sep 5.

Abstract

The 21st century has seen the licensure of new anti-infective vaccines that have demonstrated their benefit for both individual and population (herd) protection. Despite this there are still many human pathogens for which no vaccine is available. As we learn more about these pathogens, and as technologies advance, more opportunities for vaccine development have become available. This review will address these advances and highlight the paradigm shift from vaccines that are used on a population basis, to others which will have an individual benefit, if successfully licensed, but are not expected to have widespread population based use. The development of the latter vaccines has resulted in a paradigm shift toward vaccinating individuals at specific risk for infection from bacteria such as Staphylococcus aureus or Clostridium difficile, which are members of normal human flora but can cause severe disease under certain circumstances. Increasing levels of antibiotic resistance in such bacteria such as S. aureus have also driven the urgency for the identification of alternative methods of protection that do not rely on treatment or prophylaxis with antibiotics.

摘要

21 世纪见证了新型抗感染疫苗的许可,这些疫苗已证明对个体和群体(群体)保护均有益处。尽管如此,仍有许多人类病原体尚无疫苗可用。随着我们对这些病原体的了解不断加深,随着技术的进步,疫苗开发的更多机会已经出现。这篇综述将探讨这些进展,并强调从基于人群使用的疫苗向具有个体受益的疫苗的范式转变,如果成功获得许可,后者将不会被广泛用于人群基础。这些疫苗的开发导致了向针对特定感染风险的个体进行疫苗接种的范式转变,例如金黄色葡萄球菌或艰难梭菌等细菌,这些细菌是正常人体菌群的一部分,但在某些情况下会引起严重疾病。此类细菌(例如金黄色葡萄球菌)的抗生素耐药性水平不断提高,也促使人们迫切需要寻找替代的保护方法,这些方法不依赖于抗生素治疗或预防。

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